uvg266/src/cu.c

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/*****************************************************************************
* This file is part of Kvazaar HEVC encoder.
*
* Copyright (C) 2013-2015 Tampere University of Technology and others (see
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* COPYING file).
*
* Kvazaar is free software: you can redistribute it and/or modify it under
* the terms of the GNU Lesser General Public License as published by the
* Free Software Foundation; either version 2.1 of the License, or (at your
* option) any later version.
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*
* Kvazaar is distributed in the hope that it will be useful, but WITHOUT ANY
* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
* FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for
* more details.
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*
* You should have received a copy of the GNU General Public License along
* with Kvazaar. If not, see <http://www.gnu.org/licenses/>.
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****************************************************************************/
#include <string.h>
#include <stdlib.h>
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#include "cu.h"
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#include "threads.h"
/**
* \brief Number of PUs in a CU.
*
* Indexed by part_mode_t values.
*/
const uint8_t kvz_part_mode_num_parts[] = {
1, // 2Nx2N
2, // 2NxN
2, // Nx2N
4, // NxN
2, // 2NxnU
2, // 2NxnD
2, // nLx2N
2, // nRx2N
};
/**
* \brief PU offsets.
*
* Indexed by [part mode][PU number][axis].
*
* Units are 1/4 of the width of the CU.
*/
const uint8_t kvz_part_mode_offsets[][4][2] = {
{ {0, 0} }, // 2Nx2N
{ {0, 0}, {0, 2} }, // 2NxN
{ {0, 0}, {2, 0} }, // Nx2N
{ {0, 0}, {2, 0}, {0, 2}, {2, 2} }, // NxN
{ {0, 0}, {0, 1} }, // 2NxnU
{ {0, 0}, {0, 3} }, // 2NxnD
{ {0, 0}, {1, 0} }, // nLx2N
{ {0, 0}, {3, 0} }, // nRx2N
};
/**
* \brief PU sizes.
*
* Indexed by [part mode][PU number][axis].
*
* Units are 1/4 of the width of the CU.
*/
const uint8_t kvz_part_mode_sizes[][4][2] = {
{ {4, 4} }, // 2Nx2N
{ {4, 2}, {4, 2} }, // 2NxN
{ {2, 4}, {2, 4} }, // Nx2N
{ {2, 2}, {2, 2}, {2, 2}, {2, 2} }, // NxN
{ {4, 1}, {4, 3} }, // 2NxnU
{ {4, 3}, {4, 1} }, // 2NxnD
{ {1, 4}, {3, 4} }, // nLx2N
{ {3, 4}, {1, 4} }, // nRx2N
};
void kvz_coefficients_blit(const coeff_t * const orig, coeff_t * const dst,
const unsigned width, const unsigned height,
const unsigned orig_stride, const unsigned dst_stride)
{
unsigned y;
int nxn_width = (width == height) ? width : 0;
switch (nxn_width) {
case 4:
*(int64_t*)&dst[dst_stride*0] = *(int64_t*)&orig[orig_stride*0];
*(int64_t*)&dst[dst_stride*1] = *(int64_t*)&orig[orig_stride*1];
*(int64_t*)&dst[dst_stride*2] = *(int64_t*)&orig[orig_stride*2];
*(int64_t*)&dst[dst_stride*3] = *(int64_t*)&orig[orig_stride*3];
break;
case 8:
#define KVZ_COPY_ROW_8(row_num) \
*(int64_t*)&dst[dst_stride*(row_num)] = *(int64_t*)&orig[orig_stride*(row_num)]; \
*(int64_t*)&dst[dst_stride*(row_num) + 4] = *(int64_t*)&orig[orig_stride*(row_num) + 4];
KVZ_COPY_ROW_8(0);
KVZ_COPY_ROW_8(1);
KVZ_COPY_ROW_8(2);
KVZ_COPY_ROW_8(3);
KVZ_COPY_ROW_8(4);
KVZ_COPY_ROW_8(5);
KVZ_COPY_ROW_8(6);
KVZ_COPY_ROW_8(7);
break;
#undef KVZ_COPY_ROW_8
case 16:
#define KVZ_COPY_ROW_16(row_num) \
*(int64_t*)&dst[dst_stride*(row_num)] = *(int64_t*)&orig[orig_stride*(row_num)]; \
*(int64_t*)&dst[dst_stride*(row_num) + 4] = *(int64_t*)&orig[orig_stride*(row_num) + 4]; \
*(int64_t*)&dst[dst_stride*(row_num) + 8] = *(int64_t*)&orig[orig_stride*(row_num) + 8]; \
*(int64_t*)&dst[dst_stride*(row_num) + 12] = *(int64_t*)&orig[orig_stride*(row_num) + 12];
KVZ_COPY_ROW_16(0);
KVZ_COPY_ROW_16(1);
KVZ_COPY_ROW_16(2);
KVZ_COPY_ROW_16(3);
KVZ_COPY_ROW_16(4);
KVZ_COPY_ROW_16(5);
KVZ_COPY_ROW_16(6);
KVZ_COPY_ROW_16(7);
KVZ_COPY_ROW_16(8);
KVZ_COPY_ROW_16(9);
KVZ_COPY_ROW_16(10);
KVZ_COPY_ROW_16(11);
KVZ_COPY_ROW_16(12);
KVZ_COPY_ROW_16(13);
KVZ_COPY_ROW_16(14);
KVZ_COPY_ROW_16(15);
break;
#undef KVZ_COPY_ROW_16
default:
for (y = 0; y < height; ++y) {
memcpy(&dst[y*dst_stride], &orig[y*orig_stride], width * sizeof(coeff_t));
}
break;
}
}
unsigned kvz_coefficients_calc_abs(const coeff_t *const buf, const int buf_stride,
const int width)
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{
int sum = 0;
int y, x;
for (y = 0; y < width; ++y) {
for (x = 0; x < width; ++x) {
sum += abs(buf[x + y * buf_stride]);
}
}
return sum;
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}
cu_array_t * kvz_cu_array_alloc(const int width_in_scu, const int height_in_scu) {
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unsigned cu_array_size = height_in_scu * width_in_scu;
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cu_array_t *cua;
cua = MALLOC(cu_array_t, 1);
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cua->data = (cu_info_t*)malloc(sizeof(cu_info_t) * cu_array_size);
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cua->refcount = 1;
FILL_ARRAY(cua->data, 0, cu_array_size);
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return cua;
}
int kvz_cu_array_free(cu_array_t * const cua)
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{
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int32_t new_refcount;
if (!cua) return 1;
new_refcount = KVZ_ATOMIC_DEC(&(cua->refcount));
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//Still we have some references, do nothing
if (new_refcount > 0) return 1;
FREE_POINTER(cua->data);
free(cua);
return 1;
}